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采用纤维对银和钛粉末合金化铜的微观结构与性能

Microstructure and Properties of the Copper Alloyed with Ag and Ti Powders Using Fiber .

作者信息

Krupiński Mariusz, Smolarczyk Paulina Ewelina, Bonek Mirosław

机构信息

Department of Engineering Materials and Biomaterials, Silesian University of Technology, Konarskiego 18a, 44-100 Gliwice, Poland.

出版信息

Materials (Basel). 2020 May 26;13(11):2430. doi: 10.3390/ma13112430.

Abstract

The scope of the work covers the development of the relationship between the chemical composition of surface-modified copper and the diffusion of alloy elements as well as the microstructure and mechanical properties. This article presents the impact of laser alloying with titanium and silver powders on the microstructure and mechanical properties of copper. In order to investigate the phenomena occurring during the laser alloying process, microstructural studies were performed using scanning electron microscopy (SEM), optical microscopy, and energy dispersive x-ray spectroscopic (EDS) analysis of the chemical composition in micro-areas. In addition, to test the properties of the resulting alloy, abrasion resistance, hardness measurement at low loading force, and conductivity measurements were performed. As a result of alloying with Ag and Ti powders, three distinct zones were indeed recognized: re-melting zone (RZ), diffusion zone (DZ), and heat affected zone (HAZ). The surface modification that results from laser alloying increases the hardness as well as the abrasion resistance of the material. Overall, it was found that laser alloying with Ti powder increased the strength of the copper surface layer due to the formation of intermetallic phases (CuTi). It was also found that laser alloying with Ag powder changed the mechanical properties of the surface layer due to the solid solution strengthening.

摘要

工作范围涵盖表面改性铜的化学成分与合金元素扩散之间的关系发展,以及微观结构和力学性能。本文介绍了用钛粉和银粉进行激光合金化对铜的微观结构和力学性能的影响。为了研究激光合金化过程中发生的现象,使用扫描电子显微镜(SEM)、光学显微镜以及微区化学成分的能量色散X射线光谱(EDS)分析进行了微观结构研究。此外,为了测试所得合金的性能,进行了耐磨性测试、低加载力下的硬度测量以及电导率测量。用银粉和钛粉进行合金化的结果是,确实识别出了三个不同的区域:重熔区(RZ)、扩散区(DZ)和热影响区(HAZ)。激光合金化引起的表面改性提高了材料的硬度以及耐磨性。总体而言,发现用钛粉进行激光合金化由于金属间相(CuTi)的形成而提高了铜表面层的强度。还发现用银粉进行激光合金化由于固溶强化而改变了表面层的力学性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95ae/7321137/f4a9f33cf5b6/materials-13-02430-g001.jpg

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